Kafedjiiski Krum, Krauland Alexander H, Hoffer Martin H, Bernkop-Schnürch Andreas
Department of Pharmaceutical Technology, Institute of Pharmacy, Leopold-Franzens-University Innsbruck, Innrain 52, Josef Möller Haus, A-6020 Innsbruck, Austria.
Biomaterials. 2005 Mar;26(7):819-26. doi: 10.1016/j.biomaterials.2004.03.011.
In order to achieve the same properties as chitosan-4-thio-butyl-amidine and to overcome at the same time its insufficient stability, the aim of this study was to evaluate the imidoester reaction of isopropyl-S-acetylthioacetimidate for the chemical modification of chitosan and to study the properties of the resulting chitosan-thioethylamidine (TEA) derivative. The thioalkylamidine substitute was introduced without the formation of N-substituted non-thiol products. The resulting conjugates exhibited 1.05+/-0.17% or 139.68+/-17.13 micromol immobilized free thiol groups per gram polymer and a total amount of reduced and oxidized thiol groups of 1.81+/-0.65% or 179.46+/-67.95 micromol/g polymer. By the immobilization of thiol groups mucoadhesion was strongly improved due to the formation of disulfide bonds with mucus glycoproteins. Chitosan-TEA was investigated regarding to its mucoadhesive properties via tensile studies and the rotating cylinder method. In tensile studies the total work of adhesion of chitosan-TEA was increased 3.3-fold in comparison to unmodified chitosan. Results from the rotating cylinder method showed an improvement ratio of 8.9 for chitosan-TEA compared with unmodified chitosan. In spite of the immobilization of thiol groups onto chitosan its swelling behavior in aqueous solutions was not significantly altered. Cumulative release studies out of matrix tablets comprising the chitosan-TEA and the model compound fluorescence labeled dextrane (FD(4)) demonstrated a controlled release over 3h with a trend toward a pseudo-zero-order kinetic. Because of these features the new chitosan thioamidine conjugate might represent a promising new polymeric excipient for various drug delivery systems.
为了获得与壳聚糖-4-硫代丁基脒相同的性能,并同时克服其稳定性不足的问题,本研究的目的是评估异丙基-S-乙酰硫代乙酰亚胺酯对壳聚糖进行化学修饰的亚胺酯反应,并研究所得壳聚糖-硫代乙脒(TEA)衍生物的性能。引入硫代烷基脒取代基时未形成N-取代的非硫醇产物。所得共轭物每克聚合物表现出1.05±0.17%或139.68±17.13微摩尔固定的游离硫醇基团,还原型和氧化型硫醇基团的总量为1.81±0.65%或179.46±67.95微摩尔/克聚合物。由于与黏液糖蛋白形成二硫键,硫醇基团的固定极大地改善了黏膜黏附性。通过拉伸研究和旋转圆筒法研究了壳聚糖-TEA的黏膜黏附性能。在拉伸研究中,壳聚糖-TEA的总黏附功与未修饰的壳聚糖相比增加了3.3倍。旋转圆筒法的结果表明,壳聚糖-TEA与未修饰的壳聚糖相比改善率为8.9。尽管硫醇基团固定在壳聚糖上,但其在水溶液中的溶胀行为没有明显改变。对包含壳聚糖-TEA和模型化合物荧光标记葡聚糖(FD(4))的基质片剂进行的累积释放研究表明,其在3小时内实现了控释,呈现出接近零级动力学的趋势。由于这些特性,新型壳聚糖硫代脒共轭物可能是一种有前途的新型聚合物辅料,可用于各种药物递送系统。